
In plants, flavonoids play an important role in biological processes. They are involved in UV-scavenging, fertility and disease resistance. Therefore, in this study, we attempted to quantify and characterize phenolic compounds in Aesculus parviflora Walt. leaves and Aesculus glabra leaves partly suffering from attack by a leaf mining insect (C. ohridella). A total of 28 phenolic compounds belonging to the hydroxycinnamic acid, flavan-3-ols and flavonol groups were identified and quantified in Aesculus parviflora and A. glabra leaf extracts. Significantly decreased concentrations of some phenolic compounds, especially of flavan-3-ols, were observed in infected leaves compared to the non-infected ones. Additionally, a higher content of polymeric procyanidins in leaves of Aesculus parviflora than in Aesculus glabra may explain their greater resistance to C. ohridella insects.
Coumaric Acids, <i>Aesculus</i>, Organic chemistry, Aesculus, Moths, polymeric procyanidins, Insect Control, Article, QD241-441, Phenols, Animals, Herbivory, Aesculus; Polyphenols; Polymeric procyanidins; Leaves; Cameraria ohridella; LC-MS QTof, polyphenols, Disease Resistance, Plant Leaves, LC-MS QTof, Larva, <i>Cameraria ohridella</i>, leaves, Cameraria ohridella
Coumaric Acids, <i>Aesculus</i>, Organic chemistry, Aesculus, Moths, polymeric procyanidins, Insect Control, Article, QD241-441, Phenols, Animals, Herbivory, Aesculus; Polyphenols; Polymeric procyanidins; Leaves; Cameraria ohridella; LC-MS QTof, polyphenols, Disease Resistance, Plant Leaves, LC-MS QTof, Larva, <i>Cameraria ohridella</i>, leaves, Cameraria ohridella
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